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A novel bat algorithm based optimum tuning of mass dampers for improving the seismic safety of structures

机译:基于新型蝙蝠算法的质量阻尼器优化调整,提高结构的地震安全性

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摘要

Metaheuristic algorithms are effective for optimization with diverse applications in engineering. The optimum tuning of tuned mass dampers is very important for seismic structures excited by random vibrations, and optimization techniques have been used to obtain the best performance for optimally tuned mass dampers. In this study, a novel optimization approach employing the bat algorithm with several modifications for the tuned mass damper optimization problem is presented. In the proposed method, the design variables such as the mass, period and damping ratio of tuned mass damper are optimized and different earthquake records are considered during the optimization process. The method is then applied to a ten-story civil structure and the results are then compared with the analytical methods and other methods such as genetic algorithms, particle swarm optimization, and harmony search. The comparison shows that the proposed method is more effective than other compared methods. Additionally, the robustness of the optimum results was evaluated. The proposed approach for optimizating tuned mass dampers via the bat algorithm is a feasible and efficient approach.
机译:元启发式算法可有效地优化工程中的各种应用程序。调谐质量阻尼器的最佳调谐对于由随机振动激发的地震结构非常重要,并且已使用优化技术来获得最佳调谐质量阻尼器的最佳性能。在这项研究中,提出了一种新的使用bat算法的优化方法,该方法对调谐质量阻尼器优化问题进行了一些修改。该方法优化了质量阻尼器的质量,周期和阻尼比等设计变量,并在优化过程中考虑了不同的地震记录。然后将该方法应用于一个十层的土木结构,然后将结果与分析方法以及其他方法(例如遗传算法,粒子群优化和和声搜索)进行比较。比较表明,所提出的方法比其他比较方法更有效。此外,评估了最佳结果的鲁棒性。所提出的通过蝙蝠算法优化调谐质量阻尼器的方法是一种可行且有效的方法。

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